Among other things, on a two-dimensional electronic display are shown simultaneously: (a) at least a partial body view of a surface of the human model on which a location of a skin lesion on a corresponding real human has been indicated, and (b) an image of the lesion area that corresponds to the partial body view of the human model.
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1. A method implemented in a skin lesion scanning device, comprising:
receiving, on a two-dimensional electronic display of a skin lesion scanning device, a user input;
determining, by the skin lesion scanning device and in response to the user input, that a first time interval has expired or that the first time interval has not expired;
providing, on the two-dimensional electronic display and in response to determining that the first time interval has not expired, a first user interface element configured to initiate a skin lesion scanning operation by the skin lesion scanning device in response to an interaction with the user interface element by the user; and
providing, on the two-dimensional electronic display and in response to determining that the first time interval has expired, a second user interface element configured to inform the user that a performance of the device needs to be checked.
11. A computer program product residing on in a non-transitory computer readable device, the computer program comprising instructions that when executed by a skin lesion scanning device cause the skin lesion scanning device to perform operations comprising:
receiving, on a two-dimensional electronic display of a skin lesion scanning device, a user input;
determining, by the skin lesion scanning device and in response to the user input, that a first time interval has expired or that the first time interval has not expired;
providing, on the two-dimensional electronic display and in response to determining that the first time interval has not expired, a first user interface element configured to initiate a skin lesion scanning operation by the skin lesion scanning device in response to an interaction with the user interface element by the user; and
providing, on the two-dimensional electronic display and in response to determining that the first time interval has expired, a second user interface element configured to inform the user that a performance of the device needs to be checked.
2. The method of
determining, by the skin lesion scanning device, a second time interval based on an amount of time remaining until expiration of the first time interval; and
providing, on the two-dimensional electronic display, a third user interface element configured to display a representation of the second time interval.
3. The method of
4. The method of
5. The method of
determining, by the skin lesion scanning device, that the performance of the skin lesion scanning device has been checked; and
reactivating the one or more user interface elements configured to initiate the skin lesion scanning operation.
6. The method of
7. The method of
8. The method of
9. The method of
providing, on the third user interface element, a first step of the collection of successive steps and a navigation user interface element;
receiving, a user selection of the navigation user interface element; and
providing, on the third user interface element, a second step of the collection of successive steps.
10. The method of
12. The computer program of
determining, by the skin lesion scanning device, a second time interval based on an amount of time remaining until expiration of the first time interval; and
providing, on the two-dimensional electronic display, a third user interface element configured to display a representation of the second time interval.
13. The computer program of
14. The computer program of
15. The computer program of
determining, by the skin lesion scanning device, that the performance of the skin lesion scanning device has been checked; and
reactivating the one or more user interface elements configured to initiate the skin lesion scanning operation.
16. The computer program of
17. The computer program of
18. The computer program of
19. The computer program of
providing, on the third user interface element, a first step of the collection of successive steps and a navigation user interface element;
receiving, a user selection of the navigation user interface element; and
providing, on the third user interface element, a second step of the collection of successive steps.
20. The computer program of
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This application is a continuation of U.S. application Ser. No. 13/100,153, filed May 3, 2011, which is a continuation-in-part of U.S. application Ser. No. 12/916,656, filed Nov. 1, 2010, which in turn claims priority to U.S. provisional application Ser. 61/280,386, filed on Nov. 3, 2009. This application is also a continuation-in-part of U.S. application Ser. No. 12/916,656, filed Nov. 1, 2010, which in turn claims priority to U.S. provisional application Ser. 61/280,386, filed on Nov. 3, 2009. The entire contents of all above referenced applications are incorporated herein by reference.
This description relates to showing skin lesion information.
Skin lesion information, including scanned images of skin lesions and related data, can be stored on and displayed by computer to a dermatologist or other user to aid in diagnosis and treatment.
In general, in an aspect, on a two-dimensional electronic display, views of a human model that together represent all of the skin of a corresponding real human are shown simultaneously. Sex-related visible characteristics of the model are presented in a manner that can represent a real human of either sex. Visible marking is done, on the views of the surface of the human model, of the locations of skin lesions on the corresponding real human for which digital image scans are available.
Implementations may include one or more of the following features.
The views of the human model include views in which the arms of the model are not raised and views in which the arms of the model are raised. The views of the human model include a view of the bottom of the feet. The views of the human model include a view of the top of the head. The views include top, bottom, left side, right side, front, and rear. The sex-related visible characteristics are presented as smooth surfaces. The markings of the locations of skin lesions include icons. The markings of the locations of skin lesions include colors that correspond to a status of the lesions.
In general, in an aspect, on a two-dimensional electronic display, available views of a surface of a human model are shown simultaneously, the views representing skin of a corresponding real human that may bear skin lesions for which digital image scans are available. At least some available views are automatically not shown, for which the corresponding human does not bear skin lesions for which digital image scans are available.
Implementations may include one or more of the following features. The available views include views with arms raised and views without arms raised. The views that are not shown are views in which the arms of the model are raised. The locations of the lesions are marked on the views of the human model.
In general, in an aspect, on a two-dimensional electronic display, a scanned image is shown of a lesion on the skin of a real human. The scanned image represents only light within a limited wavelength band that is narrower than a full band of visible or infrared light.
Implementations may include one or more of the following features. The scanned image comprises a thumbnail image. The scanned image comprises one of a series of thumbnail images. Each of the thumbnail images can be invoked by the user to cause an enlarged version of the image to be shown.
In general, in an aspect, on a two-dimensional electronic display, a scanned image is shown of a skin lesion on the skin of a real human and an indication of a result of a computer-implemented analysis of the scanned image of the skin lesion. On the shown image, visible elements are identified that were not considered in the computer-implemented analysis of the skin lesion.
Implementations may include one or more of the following features. The visible elements include hair. The visible elements include bubbles. The visible elements include an added boundary around the lesion. The user is enabled to control aspects of the identification, on the shown image, of the visible elements.
In general, in an aspect, on a two-dimensional electronic display, a representation is shown of a scanned image of a lesion on the skin of a real human, and, on the two-dimensional electronic display, a recommendation is indicated of a next diagnostic or treatment step to be taken, based on a computer-implemented analysis of the scanned image.
Implementations may include one or more of the following features. The next diagnostic or treatment step includes biopsy. The next diagnostic or treatment step includes observation. The recommendation is indicated in a text box superimposed on the representation of the scanned image of the lesion. The recommendation is indicated by an icon. The recommendation is indicated by a color. A user is enabled to control the appearance of the recommendation.
In general, in an aspect a user of a skin lesion scanning device is enabled to perform no more than a predetermined amount of fee-bearing scanning of skin lesions on an identified human. On a two-dimensional electronic display, a status is shown of actual fee-bearing scanning relative to the predetermined amount.
Implementations may include one or more of the following features. The amount of fee-bearing scanning includes a number of completed scans. The number of completed scans is governed by information on a memory card associated with the identified human. The status indicates how many more completed scans can be performed.
In general, in an aspect, a user of a skin lesion scanning device is enabled to perform scans using the device only when the device operates within specified tolerances. On a two-dimensional electronic display, the user is shown how imminently the performance of the device needs to be checked.
In general, in an aspect, on a two-dimensional electronic display, the following are shown simultaneously: (a) at least a partial body view of a surface of the human model on which a location of a skin lesion on a corresponding real human has been indicated, and (b) an enlarged view of a lesion on a portion of the skin of a real human that corresponds to the partial body view of the human model. Each of the views is automatically updated in response to user interaction with the other view, to keep the views synchronized.
Implementations may include one or more of the following features. The partial body view includes background portions that are not parts of the human model. The enlarged view of the lesion excludes background portions that do not represent the desired portions of the skin of the real human. The at least partial body view includes a view of the entire body of the human model. Simultaneously with the partial body view and the view of the lesion, a thumbnail is shown of the partial body view. All of the views bear indications of the location of the skin lesion.
In general, in an aspect, on a two-dimensional electronic display, at least one view is shown of a surface of a human model and indications of skin lesions on the skin of a real human corresponding to the shown view of the human model. Legends are shown, for the respective skin lesions, each indicating a status of a corresponding skin lesion and a status of a scanned image of the skin lesion.
Implementations may include one or more of the following features. The status of the corresponding skin lesion includes a recommendation of a next step of diagnosis or treatment. The status of the scanned image includes progress in completion of an analysis of the image. The legend includes a color. The legend includes an icon. The legend includes a progress bar.
In general, in an aspect, on a two-dimensional electronic display, a navigable set of thumbnails is shown of body views of a human model, each thumbnail representing a single scan of a lesion on the skin of a corresponding real human. In response to a user invoking any one of the thumbnails, a larger image is automatically displayed of the corresponding scan of the lesion separately from the thumbnail. In some implementations, the thumbnail includes an indicator of the status of the lesion.
In general, in an aspect, on a two-dimensional electronic display, an image is shown of a single scan of an area on the skin of a real human, and a presence of two or more skin lesions is indicated within the single scan.
Implementations may include one or more of the following features. A next diagnostic or treatment step to be applied is indicated with respect to each of the two or more skin lesions independently. The next diagnostic or treatment step comprises biopsy. The next diagnostic or treatment step comprises observation. The next diagnostic or treatment step is indicated by a color. The next diagnostic or treatment step is indicated by an icon. The presence is indicated on the image of the single scan. The presence is indicated on a marker that is not on the image of a single scan. The marker indicates the status of all of the two or more skin lesions.
These and other aspects and features, and combinations of them, can be expressed as methods, apparatus, program products, methods of doing business, systems, components, means for performing functions, and in other ways.
These and other aspects and features will become apparent from the following description and the claims.
In general, in an aspect, on a two-dimensional electronic display, a representation is shown of a scanned image of a lesion on the skin of a real human, and, on the two-dimensional electronic display, a recommendation is indicated of a next diagnostic or treatment step to be taken, based on a computer-implemented analysis of the scanned image.
In general, in an aspect, on a two-dimensional electronic display are shown simultaneously: (a) at least a partial body view of a surface of the human model on which a location of a skin lesion on a corresponding real human has been indicated, and (b) an image of the lesion area that corresponds to the partial body view of the human model.
Implementations may include one or more of the following features. Simultaneously with the partial body view and the image of the lesion, a thumbnail of the partial body view is shown. The partial body view bears an indication of the location of the skin lesion. The image comprises a reconstructed dermoscopic image. The image comprises a traditional dermoscopic image. A user can choose whether to display the image of the lesion or a model of the lesion.
In general, in an aspect, on a two-dimensional electronic display are shown an image of a lesion location and indications of skin lesions on the skin of a real human corresponding to the shown image. Legends are shown, for the respective skin lesions, each indicating a status of a corresponding skin lesion and a status of a scanned image of the skin lesion. The image comprises a reconstructed dermoscopic image. The image comprises a traditional dermoscopic image. The status of the scanned image comprises progress in completion of an analysis of the image. The legend comprises a color. The legend comprises an icon. The legend comprises a progress bar.
In general, in an aspect, on a two-dimensional electronic display are simultaneously shown: a list of rows where each row is an image representing the lesion location and the next diagnostic or treatment step in a column wise list format.
Implementations may include one or more of the following features. The image comprises a reconstructed dermoscopic image. The image comprises a traditional dermoscopic image. The next diagnostic or treatment step comprises biopsy. The next diagnostic or treatment step comprises observation. The next diagnostic or treatment step is indicated by a color.
These and other aspects and features, and combinations of them, can be expressed as methods, apparatus, program products, methods of doing business, systems, components, means for performing functions, and in other ways.
These and other aspects and features will become apparent from the following description and the claims.
The patent or application file contains at least one drawing executed in color. Copies of this patent or patent application publication with colored drawing(s) will be provided by the patent office upon request and payment of the necessary fee.
By providing novel features in a user interface of a computer-implemented skin lesion information system, a dermatologist or other physician or other medical worker, researcher, or patient (or any other user) can (among other things) acquire, enter, store, review, analyze, annotate, process, manage, and use for diagnosis or treatment (among other things), skin lesion information (including scans of skin lesions, data about the scans, and any other kind of information about skin lesions), effectively, inexpensively, accurately, comfortably, quickly, and safely.
The features discussed here can be used alone or in combination with other user interfaces in a wide variety of skin lesion systems. The skin lesion systems can include general purpose and special purpose computers, machines, devices, equipment, and systems of any kind, including systems that have scanning devices, storage, memory, and display devices, for example. The implementations can use handheld devices, workstations, networks, and any other systems that process or store information or communicate it locally or remotely. When a computer is used in an implementation, the computer can have typical or special memory, storage, displays, keyboards, mice, communications capabilities, and other features. And a wide variety of operating systems, and application software can be used.
In some examples, the features of the user interface can be implemented on a mobile cart of the kind described in U.S. patent application Ser. Nos. 29/341,111, 29/341,114, and 12/512,775, all three filed on Jul. 30, 2009 Skin lesion information may be stored on and retrieved from memory devices of any kind including the memory cards or usage cards described in U.S. patent application Ser. No. 12/512,895, filed Jul. 30, 2009. Usages of the systems associated with usage cards can be monitored and controlled as described, for example, in U.S. patent application Ser. No. 11/761,816, filed Jun. 12, 2007. Additional information concerning user interfaces for skin lesion systems is found in U.S. patent application Ser. No. 11/681,345, filed Mar. 2, 2007. Additional information about identifying a location of a lesion on a human body is found in U.S. patent application Ser. No. 12/204,247, filed Sep. 4, 2008. All of the applications and patents identified here and elsewhere in this application are incorporated here by reference.
In some implementations, the lesion scanner used with the user interface can be a MelaFind probe developed by Electro-Optical Sciences, Inc. (now MELA Sciences, Inc.), a multi-spectral scanner. Some information about the implementation of the MelaFind system can be found in United States patents and patent applications assigned to Electro-Optical Sciences, Inc. (now MELA Sciences, Inc.), and incorporated here by reference, including U.S. Pat. Nos. 6,081,612; 6,208,749; and 6,626,558.
In general, but with some exceptions, the flow in each figure proceeds from left to right. Flow lines 104 in the figures connect user controls 106, such as buttons, in some of the screens, to other screens that appear when the user invokes the controls. In some cases, a flow line indicates a connection by pointing to a box 108 which contains a reference to the screen to which control is shifted. In each of the four figures, each of the thumbnails bears an identifying number to facilitate references to one another.
Turning to the flow to which
In
Invoking the Add button 714 leads to
The Remove button 714 returns the user to the screen of
In
When an account is to be changed, either from
Invoking the Settings tab leads to the screen of
Turning now to the main user flow shown in
If the user inserts a card that is not readable or not authorized for use, the screen of
There are three types of screens represented in the group of
In the screen of
The human model views of
On the left side of the screen of
In
A second set of the screens, in
In the example as shown in
Once the user has identified the location of the lesion, the screen of
On the right side of the multispectral analysis pane 3206 a column 3210 of thumbnail positions 3211 represents a succession of spectral bands for which spectral-band images are taken, for example, when the MelaFind probe is used to scan a lesion. Each of the thumbnail positions represents the spectral-band image for one of the spectral bands. The presence of a thumbnail 3212 in one of the positions in the column indicates that the corresponding spectral-band image has been acquired for that band. The summary button 3214 on the screen of
The scan of
When the image processing has been completed, the screen of
In addition, results of the most recently completed scan are shown in text boxes such as 3604, 3606 in the multi-spectral analysis pane. In this instance, the scan contained two different lesions, which were analyzed separately, and are both included in the image of the scan. The result for the left lesion is “MelaFind Negative” and the lesion area is reported in square millimeters. The result for the right lesion is “MelaFind Positive” indicating a recommendation that a biopsy be performed. These results (positive or negative, indicating the need to biopsy or not) are of the kind described or referred to in U.S. patent application Ser. No. 11/761,816, filed Jun. 12, 2007; Ser. No. 11/681,345, filed Mar. 2, 2007; Ser. No. 11/956,918, filed Dec. 4, 2007; and Ser. No. 12/512,895, filed Jul. 30, 2009, all of which are incorporated here by reference. In each of the Result boxes, one of two icons 3605, 3607 is highlighted to indicate either that the lesion should be biopsied (microscope icon) or that it should be observed (eye icon). The Result boxes are displayed directly on the scanned image in this example, but could also be displayed in a wide variety of other ways.
The completion of the image processing for a scan, as represented in the screen of
Also, with the completion of image processing for the current scan, the general state of the screen is changed so that it is no longer in a scanning mode, as discussed above, but is now in a lesion navigation mode. In the lesion navigation mode, the screen elements are arranged to enable a user to navigate easily from one of the scanned lesions to another and therefore to view the images of different lesions, the multi-spectral images for each lesion, and the results of the analysis of each lesion, among other things.
In the lesion navigation mode, the lesion navigation pane 3102 is updated to show thumbnails of all of the lesions that have been successfully scanned, processed, and stored on the memory card. The scroll buttons 3608, 3610 become brighter and are active to permit easy navigation, and the user can invoke any of the lesion thumbnails in the pane, which then is highlighted to indicate that it has been invoked. (In general, when a user control is displayed more brightly on any of the screens, that control is active and can be invoked, and when it is displayed less brightly (“greyed”), it is inactive and cannot be invoked.)
In the lesion navigation mode, as shown in
The screen of
In some cases, the scan attempted by the user fails because the image analysis cannot be done effectively with an appropriate degree of confidence. The screen of
As illustrated by the screen of
The screens of
In the example screens of
The colors and symbol shapes in the summary bar correspond to symbol shapes and colors on lesion status bars 4110. There is a status bar shown for each lesion. In this case, there are twelve bars corresponding to twelve lesions that were scanned. In this example, a green eye is used to indicate that the next step is observation and a red microscope is used to indicate that the next step is biopsy. Blue is used to indicate that computer processing is not yet complete. In this example, purple identifies a dermascopic image. Progress indications are shown also in the lesion thumbnails. A wide variety of other colors and icons could be used.
In the Show-Results state, each lesion status bar has a color that corresponds to the status of the lesion (in the example shown: positive, negative, dermascope, or in process). The bars for lesions for which there are MelaFind results also show icons at the left end. For images that are in process, the bar shows the state of completion in the form of a progressive completion stripe. In cases in which a single scan contained more than one lesion, the lesion status bar is split to show the results for each of the (up to four) lesions in the scan. Each lesion bar is connected by a lead line to the location of the lesion on the model. On the model, the marker for each lesion takes the form of the icon and color corresponding to the icon and color of the lesion status bar. A wide variety of other configurations of bars or other indicators could be used.
The screen of
In the Hide-Results state, illustrated by the screen of
In some cases, a lesion status bar has an exclamation icon, which indicates that the instruction manual should be consulted for further information.
The lesion thumbnails in the lesion navigation pane all show bars indicating the progress of scanning and image processing.
As shown in the screen of
The screens of
Every four hours, for example, the screen of
The screens of
A Help button 4702 always leads to helpful information about that step. A Back button 4704 always returns the user to the prior step. A Phantom Imaging button 4706 arms the system for phantom imaging from the screen of
Because the actual use of the memory card to store images of skin lesions on patients has an associated cost, the system provides a Practice mode for scanning, the process of which is tracked in
As shown in
When an image of the lesion is available (either one that is taken using a separate digital camera or one that is reconstructed), that “actual” image can be used to replace, on the model displayed to the user, the close-up model image of the lesion location.
To arrange this substitution of real image for model image of the lesion location, the user invokes the clinical button 5902. Doing so, takes the user to a window that shows available images. When the user selects one of those images, the user is returned to the screen of
The real image that is substituted for the model image could be a reconstructed dermascopic image, or a traditional dermascopic image, or other kinds of images.
Other features described above with respect to other figures may also apply to the features illustrated in
For example, a wide variety of other types, arrangements, orientations, appearances, and names of the user controls, thumbnails, views, and arrangements of the user interface could be substituted for the examples described above. The sequence of actions and responses of the user interface could also be altered. The coordination and synchronization of different views could be arranged differently. The human models could be made more or less realistic. In some examples, actual photographs of the real human could be substituted for the model photographs. Different sets of human models could be available in selectable by the user to represent real humans of different sizes, shapes, skin coloring, racial features, ages, and other characteristics so that they more directly represent a real human who is the subject of the skin lesion scanning. The kinds of results displayed for each of the lesions could be other than “positive” and “negative” and could be expressed in displayed in other ways. Other navigational devices could be provided to enable the user to move among scans in other ways.
Butler, Christiano, Adrian, Joanna S., Wojton, Maciej, Roy, Mrinalini
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